Do seeding and seedling planting result in similar restored plant communities?

IF 2 3区 环境科学与生态学 Q3 ECOLOGY
Bradley J. Butterfield, Seth M. Munson
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引用次数: 0

Abstract

Aims

Restoration practitioners often face a tradeoff between low cost but risky seeding vs expensive but more reliable seedling planting to meet revegetation goals. Knowing under what environmental and management conditions direct seeding vs seedling planting benefit different species could improve restoration practice.

Methods

We compared seed emergence to planted-seedling survival among perennial herbaceous species commonly used in restoration across eight experimental restoration sites on the Colorado Plateau, USA. We used linear models to assess relationships between emergence and survival among species, and to assess the effects of site climate and seeding pre-treatments on those relationships.

Results

We found that among species, emergence was positively correlated with survival in the cooler sites, meaning that species with high emergence also had high survival and vice versa, but had no relationship in the hottest sites. Furthermore, pre-treatments to enhance soil moisture in seeded plots, specifically microtopography (pits) and mulch, also resulted in positive relationships between emergence and survival among species, while seeding without additional soil pre-treatments did not. Seedling planting cost 14 times as much as direct seeding alone, dropping to nine times as much when pre-treatments were combined with seeding.

Conclusions

Taken together, these results suggest that investments in seedling planting at hotter dryland sites, or in creating microtopography or mulching prior to seeding across sites, are likely to promote establishment success compared to simple seeding methods in degraded dryland ecosystems. These findings also identify opportunities for hybrid seeding and planting approaches that balance tradeoffs between risk and cost, respectively.

Abstract Image

播种和育苗会产生类似的恢复植物群落吗?
目的 恢复实践者经常要在成本低但风险大的播种与成本高但更可靠的秧苗种植之间做出权衡,以实现重新植被的目标。了解在何种环境和管理条件下直接播种与种植幼苗对不同物种有益,可以改进恢复实践。 方法 我们比较了美国科罗拉多高原 8 个试验性恢复地点中常用于恢复的多年生草本物种的种子萌发与植苗存活率。我们使用线性模型来评估不同物种的出苗率和存活率之间的关系,并评估现场气候和播种前处理对这些关系的影响。 结果 我们发现,在较凉爽的地点,物种间的出苗率与存活率呈正相关,这意味着出苗率高的物种存活率也高,反之亦然,但在最炎热的地点则没有关系。此外,为提高播种地块的土壤湿度而进行的预处理,特别是微地形(坑)和覆盖物,也会导致出苗率与物种存活率之间的正相关关系,而不进行额外土壤预处理的播种则不会。育苗成本是直接播种成本的 14 倍,当预处理与播种相结合时,育苗成本降至 9 倍。 结论 综上所述,这些结果表明,与在退化的旱地生态系统中采用简单的播种方法相比,在较热的旱地地点投资播种育苗,或在跨地点播种前投资创造微地形或覆盖物,很可能会促进植树造林的成功。这些发现还为混合播种和种植方法分别平衡风险和成本之间的权衡提供了机会。
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来源期刊
Applied Vegetation Science
Applied Vegetation Science 环境科学-林学
CiteScore
6.00
自引率
10.70%
发文量
67
审稿时长
3 months
期刊介绍: Applied Vegetation Science focuses on community-level topics relevant to human interaction with vegetation, including global change, nature conservation, nature management, restoration of plant communities and of natural habitats, and the planning of semi-natural and urban landscapes. Vegetation survey, modelling and remote-sensing applications are welcome. Papers on vegetation science which do not fit to this scope (do not have an applied aspect and are not vegetation survey) should be directed to our associate journal, the Journal of Vegetation Science. Both journals publish papers on the ecology of a single species only if it plays a key role in structuring plant communities.
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